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Sustainable Hydropower in West Africa

Planning, Operation, and Challenges
Buch | Softcover
232 Seiten
2018
Academic Press Inc (Verlag)
978-0-12-813016-2 (ISBN)
CHF 165,75 inkl. MwSt
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Sustainable Hydropower in West Africa: Planning, Operation, and Challenges provides a comprehensive overview of the planning, deployment and management of hydropower in West Africa and similar regions. The authors use a practical approach to analyze available technology, modeling methodologies and sustainability aspects, such as the dependence between climate and hydropower, and socio-economic and environmental impacts. They discuss the need for innovative solutions and how to close research gaps in the field for this region. Although more than 50% of West Africa’s hydropower potential is still untapped, re-engineering and maintenance of existing hydropower plants is a key issue and is discussed.

Issues of productivity and optimization are also covered, as well as the introduction of new technology and integration of hydropower into existing energy systems—renewable energy systems, in particular. Policy and regulation are also examined, considering competing needs when managing water resources. The final chapter offers a summary of activities, strategies, policies and technology for easy reference and practical use.

Due to its wide coverage and real life examples, this is a useful reference for engineering professionals in the field of hydropower, working in West Africa and regions with similar conditions. This book helps engineers make technology and location decisions for planning, deploying and operating hydropower plants. The book’s accessible language and international authorship also allows for easy use by energy researchers, analysts and policy makers who need information for the analysis, modeling, financing, implementation and regulation of hydropower in West Africa and related regions.

Ing. Prof. Amos Kabo-bah is an Associate Professor and the acting Dean for the International Relations Office at the University of Energy and Natural Resources (UENR) – Sunyani-Ghana. He holds BSc Civil Engineering from the Kwame Nkrumah University of Science and Technology (KNUST), Ghana, MSc Environmental Hydrology from the University of Twente in the Netherlands and a PhD in Hydrology and Water Resources from the Hohai University in Nanjing, China. He had his Post-doctoral research on Climate Change Impacts on Hydropower Generation in Ghana at the University of Ibadan, Nigeria. Dr. Chukwuemeka J. Diji is a senior lecturer and the immediate past acting. Head of department, department of mechanical engineering, university of Ibadan (August, 2015 – July, 2017). he currently teach courses in Thermo – fluids, material science, production technology and entrepreneurship as well as energy studies at both undergraduate and postgraduate level. I also serve as an associate lecturer in three major academic Centre’s of the University of Ibadan: Centre for Sustainable Development (CESDEV); Centre for Petroleum, Economics, Energy and Law (CPEEL); and the Centre for Entrepreneurship and Innovation (CEI). He obtained a PhD in Mechanical Engineering from the University of Ibadan in 2008, and is a member of the Nigerian Society of Engineers, the Nigerian Institution of Mechanical Engineers, the Automobile Engineers’ Institute and registered engineer with the Council for the Regulation of Engineering in Nigeria (COREN).

1. Climate Change and Hydro-Vision
2. Promoting Hydropower Research in Africa
3. Hydropower and the era of Climate Change and Carbon Financing
4. Hydropower development– Review of the Successes and Failures in the World
5. Climate Change and Societal Change
6. Renewable Energy, Sustainable Development and Energy Systems Integration
7. Hydropower Technologies – Opportunities and Challenges
8. Hydropower and Changing Economic Needs
9. Legislation on Hydropower Use and Development
10. Re-engineering Hydropower Plant for Improved Performance
11. Hydropower Generation in West Africa – the Working Solution Manual

Erscheinungsdatum
Verlagsort San Diego
Sprache englisch
Maße 152 x 229 mm
Gewicht 450 g
Themenwelt Technik Elektrotechnik / Energietechnik
ISBN-10 0-12-813016-4 / 0128130164
ISBN-13 978-0-12-813016-2 / 9780128130162
Zustand Neuware
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